CN103631288B - Temperature controller and temperature-controlled process thereof - Google Patents
Temperature controller and temperature-controlled process thereof Download PDFInfo
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- CN103631288B CN103631288B CN201310626142.4A CN201310626142A CN103631288B CN 103631288 B CN103631288 B CN 103631288B CN 201310626142 A CN201310626142 A CN 201310626142A CN 103631288 B CN103631288 B CN 103631288B
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- 238000004891 communication Methods 0.000 claims description 5
- 238000011897 real-time detection Methods 0.000 claims description 5
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- 238000004134 energy conservation Methods 0.000 abstract description 3
- 238000012544 monitoring process Methods 0.000 abstract 2
- 238000005485 electric heating Methods 0.000 description 8
- 239000000203 mixture Substances 0.000 description 6
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- 238000005516 engineering process Methods 0.000 description 2
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- 238000004378 air conditioning Methods 0.000 description 1
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- 230000005540 biological transmission Effects 0.000 description 1
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Abstract
Temperature controller and temperature-controlled process thereof, relate to a kind of controller, in order to the temperature control equipment solving electricity heating at present exists the low and not energy-conservation problem of control accuracy, it comprises temperature collection circuit, single chip circuit, keyboard circuit, heater circuit and display circuit, the thermal control signals output terminal of single chip circuit is connected with the thermal control signals input end of heater circuit, the temperature acquisition signal output part of temperature collection circuit is connected with the temperature acquisition signal input part of single chip circuit, the keyboard signal output terminal of keyboard circuit is connected with the keyboard signal input end of single chip circuit, the display output terminal of single chip circuit is connected with the display input end of display circuit.Described control method, by being embedded in software simulating at monolithic self-contained circuit, reaches setting value for the indoor temperature and surface temperature controlling Real-Time Monitoring, and the various data of input and the data of monitoring are sent to host computer.It is for the control system of electricity heating.
Description
Technical field
The present invention relates to a kind of controller, particularly a kind of temperature controller and temperature-controlled process thereof.
Background technology
Along with development in science and technology is changed, the scientific and technological content that lodging condition comprises is more and more high.Comprise a lot of building of residential building and office building now, gradually abandoned traditional hot-water heating heating installation, gradually be transmitted to electric heating mode, this present situation is especially more aobvious outstanding in North City.The new heating system of electric heating after China is 2000, the electric heater product from the indirect heating of Electric radiant Heating Film, Geothermal electric cable to various direct electric heating is in the past few years the supplementary function brought out the best in each other in heating cause.This heating system compares plumbing fixture, and environmental pollution reduces, and is more conducive to environmental protection, and resource is more saved simultaneously, and utilization ratio is more increased.
Electricity heating can do following classification according to heating surface area and homogeneity:
(1) point type heating: with air-conditioning, electric heating fan, radiant panel for representative;
(2) line formula heating: take heating cable as representative;
(3) face formula heating: take Electric radiant Heating Film as representative.Electric radiant Heating Film, can be further subdivided into again: the Electric radiant Heating Film kind that electric heating canopy film, electric heating wall film and electric heating ground film etc. are different.
And the temperature of above-mentioned electricity heating is controlled to there is the low and not energy-conservation problem of control accuracy.
Summary of the invention
There is the low and not energy-conservation problem of control accuracy in the temperature control equipment that the object of the invention is to solve electricity heating at present, the invention provides a kind of temperature controller and temperature-controlled process thereof.
Temperature controller of the present invention, it comprises temperature collection circuit, single chip circuit, keyboard circuit, heater circuit and display circuit,
The thermal control signals output terminal of single chip circuit is connected with the thermal control signals input end of heater circuit,
The temperature acquisition signal output part of temperature collection circuit is connected with the temperature acquisition signal input part of single chip circuit,
The keyboard signal output terminal of keyboard circuit is connected with the keyboard signal input end of single chip circuit,
The display output terminal of single chip circuit is connected with the display input end of display circuit.
The temperature-controlled process of temperature controller, described control method is by being embedded in software simulating at monolithic self-contained circuit, and described control method comprises the steps:
For inputting the step of the indoor temperature of setting, the surface temperature of setting, the heating power of heater circuit and residing room number;
For receiving the step of the temperature signal that temperature collection circuit detects in real time;
Described temperature signal comprises indoor real time temperature signal, the resistance wire real time temperature signal of ground real time temperature signal and heater circuit;
For controlling the step of the temperature signal of the described real-time detection of display circuit display;
During for being greater than the indoor temperature of setting when the indoor real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the step that heater circuit stops heating;
During for being less than the indoor temperature of setting when the indoor real time temperature received, carry out the step heated according to the power control heater circuit of the heater circuit of input;
During for being greater than the surface temperature of setting when the ground real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the step that heater circuit stops heating;
During for being less than the surface temperature of setting when the ground real time temperature received, carry out the step heated according to the power control heater circuit of the heater circuit of input;
For recording the step of heater circuit heat time;
The step of host computer is sent to for room number, the heating power of heater circuit of input and the heater circuit heat time of record residing for input.
The invention has the advantages that, the present invention take single-chip microcomputer as the hardware circuit design that core is developed, and embedded software is to realize controlling, display, the basic functions such as communication.Thus improve control accuracy of the present invention, by precise control of temperature and saved electric energy, control accuracy of the present invention improves 30% compared with existing control device, and electric energy also saves 50%.The scope of application of the present invention: the building electricity ground thermal control system that both may be used for office building, also can among family's electric heating control system.
Accompanying drawing explanation
Fig. 1 is the principle schematic of temperature controller of the present invention.
Fig. 2 is the principle schematic of the electrical connection of temperature controller of the present invention.
Embodiment
Embodiment one: composition graphs 1 illustrates present embodiment, the temperature controller described in present embodiment, it comprises temperature collection circuit 3, single chip circuit 4, keyboard circuit 5, heater circuit 6 and display circuit 7,
The thermal control signals output terminal of single chip circuit 4 is connected with the thermal control signals input end of heater circuit 6,
The temperature acquisition signal output part of temperature collection circuit 3 is connected with the temperature acquisition signal input part of single chip circuit 4,
The keyboard signal output terminal of keyboard circuit 5 is connected with the keyboard signal input end of single chip circuit 4,
The display output terminal of single chip circuit 4 is connected with the display input end of display circuit 7.
The principle of work of the system of cable low temperature radiation heating is after heating cable energising, working temperature is 40 DEG C-60 DEG C, by ground (or metope, end face) as radiating surface, while small part convection heat transfer heat ambient air, most heat to the building enclosure of surrounding, object, human body with radiation mode transmission, after building enclosure, object and absorption of human body radiation heat, its surface temperature raises, thus reaches and improve and keep the object of room temperature.
The display circuit of present embodiment is made up of LCD driving chip HT1621B and lcd screen, real-time display update indoor temperature at that time.
Present embodiment makes temperature collection circuit 3 collecting temperature signal by the temp probe be layed in floor, by room single chip circuit 4 control temperature, heater circuit 6 heats, after suitable indoor temperature reaches setting value, the heater circuit that makes of the single chip circuit of present embodiment stops heating, when indoor temperature starts again to start lower than temperature controller during temperature controller setting value.Heater circuit is made to start heating, so reciprocal operation.
Embodiment two: present embodiment is the further restriction to the temperature controller described in embodiment one, and it also comprises indicator light circuit 8, the indicator signal output terminal of single chip circuit 4 is connected with the indicator signal input end of indicator light circuit 8.
Embodiment three: present embodiment is the further restriction to the temperature controller described in embodiment two, and it also comprises telecommunication circuit 1,
The signal of communication output terminal of single chip circuit 4 is connected with the signal of communication input end of telecommunication circuit 1.
Telecommunication circuit 1 is mainly made up of semiduplex MAX485 chip, is responsible for communicating with host computer, and specifically, when host computer is transmitted an order, temperature controller sense command also makes corresponding reply.
Embodiment four: present embodiment is the further restriction to the temperature controller described in embodiment three, and it also comprises power circuit 2, described power circuit 2 comprises direct supply VCC and direct supply V1; Direct supply VCC is temperature collection circuit 3, single chip circuit 4, keyboard circuit 5, display circuit 7, indicator light circuit 8 and telecommunication circuit 1 provide working power, and direct supply V1 provides working power for heater circuit 6.
Embodiment five: composition graphs 2 illustrates present embodiment, present embodiment is the further restriction to the temperature controller described in embodiment four, and described single chip circuit 4 comprises chip STC12C5410AD, electrochemical capacitor C1, electrochemical capacitor C7, electric capacity C2, electric capacity C3, electric capacity C6, resistance R20 and crystal oscillator Y1;
One end of resistance R20 is connected with the pin 3 of chip STC12C5410AD with the negative pole of polar capacitor C1 simultaneously, the power supply ground of another termination direct supply VCC of resistance R20, and the positive pole of polar capacitor C1 connects the positive pole of direct supply VCC;
The pin two 8 of the positive pole of polar capacitor C7 and one end of electric capacity C6 and chip STC12C5410AD connects the positive pole of direct supply VCC simultaneously, the power supply ground of the negative pole of polar capacitor C7 and another termination direct supply VCC of electric capacity C6;
One end of electric capacity C2 and one end of electric capacity C3 connect the power supply ground of direct supply VCC simultaneously, the other end of electric capacity C2 is connected with the pin 6 of chip STC12C5410AD with one end of crystal oscillator Y1 simultaneously, and the other end of electric capacity C3 is connected with the pin 7 of the other end of crystal oscillator Y1 and chip STC12C5410AD simultaneously.
Embodiment six: composition graphs 2 illustrates present embodiment, present embodiment is the further restriction to the temperature controller described in embodiment five, temperature collection circuit 3 comprise resistance R19, electric capacity C8, the 6th diode D6, the 7th diode D7 and temperature sensor;
The negative electrode of one end of resistance R19, one end of electric capacity C8, the 7th diode D7 is connected with the pin one 9 of chip STC12C5410AD with one end of temperature sensor simultaneously, and the anode of the other end of resistance R19, the other end of electric capacity C8, the 6th diode D6 and the anode of the 7th diode D7 connect the power supply ground of direct supply VCC simultaneously;
The anode of the 6th diode D6 and the other end of temperature sensor connect the positive pole of direct supply VCC simultaneously.
Embodiment seven: composition graphs 2 illustrates present embodiment, present embodiment is the further restriction to the temperature controller described in embodiment five, and described heater circuit 6 comprises resistance R18, the first NPN type triode Q1, resistance R19, the first diode D1 and relay K;
One end of resistance R18 is connected with the pin one 3 of chip STC12C5410AD, the other end of resistance R18 is connected with the base stage of NPN type triode Q1, the emitter of NPN type triode Q1 connects the power supply ground of direct supply V1, the collector of NPN type triode Q1 is connected with one end of resistance R19, the other end of resistance R19 is connected with one end of the coil of relay K with the anode of the first diode D1 simultaneously, the negative electrode of the first diode D1 is connected the positive pole of direct supply V1 with the other end of the coil of relay K simultaneously, one end of the switch of relay K connects one end of well heater, the two ends of the normal open switch of relay K are two links of well heater.
When practical application, the normal open switch of relay K is connected in the current supply circuit of well heater, realizes the control to heating installation power supply power supply.
Embodiment eight: composition graphs 2 illustrates present embodiment, present embodiment is the further restriction to the temperature controller described in embodiment five, and pilot lamp dot circuit 8 comprises resistance R16, resistance R17, light emitting diode DS8 and the second NPN type triode Q3;
One end of resistance R16 connects the positive pole of direct supply VCC, the other end of resistance R16 is connected with the anode of light emitting diode DS8, the negative electrode of light emitting diode DS8 is connected with the collector of the second NPN type triode Q3, the base stage of the second NPN type triode Q3 is connected with one end of resistance R17, the other end of resistance R17 is connected with the pin one 2 of chip STC12C5410AD, and the emitter of the second NPN type triode Q3 connects the power supply ground of direct supply VCC.
Embodiment nine: composition graphs 2 illustrates present embodiment, present embodiment is the further restriction to the temperature controller described in embodiment four, and power circuit 2 comprises electric capacity C9, electric capacity C10, electric capacity C11, electric capacity C12, voltage stabilizing chip L7805, rectifier circuit and transformer TRANS4;
The primary coil of transformer TRANS4 is connected in 200ACV current supply circuit, the two ends of the secondary coil of transformer TRANS4 are connected with two AC signal input ends of rectifier circuit respectively, DC power output end of rectifier circuit is held with the Vin of one end of electric capacity C12, one end of electric capacity C11 and voltage stabilizing chip L7805AB-V simultaneously and is connected, the other end of the other end of another DC power output end of rectifier circuit, the other end of electric capacity C12, electric capacity C11, the other end of electric capacity C9, electric capacity C10 is connected with the GND end of voltage stabilizing chip L7805AB-V simultaneously
One end of electric capacity C9 and one end of electric capacity C10 are held with the Vout of voltage stabilizing chip L7805AB-V simultaneously and are connected, and the Vout end of voltage stabilizing chip L7805AB-V is the positive pole of direct supply VCC, and the Vin end of voltage stabilizing chip L7805AB-V is the positive pole of direct supply V1.
Embodiment ten: present embodiment is the further restriction to the temperature controller described in embodiment one,
It also comprises control module, and described control module is embedded in single chip circuit 4, and described control module comprises as lower module:
For inputting the module of the indoor temperature of setting, the surface temperature of setting, the heating power of heater circuit and residing room number;
For receiving the module of the temperature signal that temperature collection circuit detects in real time;
Described temperature signal comprises indoor real time temperature signal, the resistance wire real time temperature signal of ground real time temperature signal and heater circuit;
For controlling the module of the temperature signal of the described real-time detection of display circuit display;
During for being greater than the indoor temperature of setting when the indoor real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the module that heater circuit stops heating;
During for being less than the indoor temperature of setting when the indoor real time temperature received, carry out the module heated according to the power control heater circuit of the heater circuit of input;
During for being greater than the surface temperature of setting when the ground real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the module that heater circuit stops heating;
During for being less than the surface temperature of setting when the ground real time temperature received, carry out the module heated according to the power control heater circuit of the heater circuit of input;
For recording the module of heater circuit heat time;
The module of host computer is sent to for room number, the heating power of heater circuit of input and the heater circuit heat time of record residing for input.
Embodiment 11: the temperature-controlled process of the temperature controller described in present embodiment embodiment one, described control method is by being embedded in software simulating at monolithic self-contained circuit 4, and described control method comprises the steps:
For inputting the step of the indoor temperature of setting, the surface temperature of setting, the heating power of heater circuit and residing room number;
For receiving the step of the temperature signal that temperature collection circuit detects in real time;
Described temperature signal comprises indoor real time temperature signal, the resistance wire real time temperature signal of ground real time temperature signal and heater circuit;
For controlling the step of the temperature signal of the described real-time detection of display circuit display;
During for being greater than the indoor temperature of setting when the indoor real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the step that heater circuit stops heating;
During for being less than the indoor temperature of setting when the indoor real time temperature received, carry out the step heated according to the power control heater circuit of the heater circuit of input;
During for being greater than the surface temperature of setting when the ground real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the step that heater circuit stops heating;
During for being less than the surface temperature of setting when the ground real time temperature received, carry out the step heated according to the power control heater circuit of the heater circuit of input;
For recording the step of heater circuit heat time;
The step of host computer is sent to for room number, the heating power of heater circuit of input and the heater circuit heat time of record residing for input.
Claims (5)
1. temperature controller, it comprises temperature collection circuit (3), single chip circuit (4), keyboard circuit (5), heater circuit (6) and display circuit (7),
The thermal control signals output terminal of single chip circuit (4) is connected with the thermal control signals input end of heater circuit (6),
The temperature acquisition signal output part of temperature collection circuit (3) is connected with the temperature acquisition signal input part of single chip circuit (4),
The keyboard signal output terminal of keyboard circuit (5) is connected with the keyboard signal input end of single chip circuit (4),
The display output terminal of single chip circuit (4) is connected with the display input end of display circuit (7);
Described temperature controller also comprises indicator light circuit (8), and the indicator signal output terminal of single chip circuit (4) is connected with the indicator signal input end of indicator light circuit (8);
Described temperature controller also comprises telecommunication circuit (1),
The signal of communication output terminal of single chip circuit (4) is connected with the signal of communication input end of telecommunication circuit (1);
Described temperature controller also comprises power circuit (2), and described power circuit (2) comprises direct supply VCC and direct supply V1; Direct supply VCC is temperature collection circuit (3), single chip circuit (4), keyboard circuit (5), display circuit (7), indicator light circuit (8) and telecommunication circuit (1) provide working power, and direct supply V1 is that heater circuit (6) provides working power;
Described single chip circuit (4) comprises chip STC12C5410AD, polar capacitor C1, polar capacitor C7, electric capacity C2, electric capacity C3, electric capacity C6, resistance R20 and crystal oscillator (Y1);
One end of resistance R20 is connected with the pin 3 of chip STC12C5410AD with the negative pole of polar capacitor C1 simultaneously, the power supply ground of another termination direct supply VCC of resistance R20, and the positive pole of polar capacitor C1 connects the positive pole of direct supply VCC;
The pin two 8 of the positive pole of polar capacitor C7 and one end of electric capacity C6 and chip STC12C5410AD connects the positive pole of direct supply VCC simultaneously, the power supply ground of the negative pole of polar capacitor C7 and another termination direct supply VCC of electric capacity C6;
One end of electric capacity C2 and one end of electric capacity C3 connect the power supply ground of direct supply VCC simultaneously, the other end of electric capacity C2 is connected with the pin 6 of chip STC12C5410AD with one end of crystal oscillator (Y1) simultaneously, and the other end of electric capacity C3 is connected with the other end of crystal oscillator (Y1) and the pin 7 of chip STC12C5410AD simultaneously;
It is characterized in that, temperature collection circuit (3) comprises resistance R19, electric capacity C8, the 6th diode D6, the 7th diode D7 and temperature sensor;
The negative electrode of one end of resistance R19, one end of electric capacity C8, the 7th diode D7 is connected with the pin one 9 of chip STC12C5410AD with one end of temperature sensor simultaneously, and the anode of the other end of resistance R19, the other end of electric capacity C8, the 6th diode D6 and the anode of the 7th diode D7 connect the power supply ground of direct supply VCC simultaneously;
The anode of the 6th diode D6 and the other end of temperature sensor connect the positive pole of direct supply VCC simultaneously.
2. temperature controller according to claim 1, is characterized in that, described heater circuit (6) comprises resistance R18, the first NPN type triode Q1, resistance R19, the first diode (D1) and relay (K);
One end of resistance R18 is connected with the pin one 3 of chip STC12C5410AD, the other end of resistance R18 is connected with the base stage of NPN type triode Q1, the emitter of NPN type triode Q1 connects the power supply ground of direct supply V1, the collector of NPN type triode Q1 is connected with one end of resistance R19, the other end of resistance R19 is connected with one end of the coil of relay (K) with the anode of the first diode (D1) simultaneously, negative electrode and the other end of the coil of relay (K) of the first diode (D1) are connected the positive pole of direct supply V1 simultaneously, one end of the switch of relay (K) connects one end of well heater, the two ends of the normal open switch of relay (K) are two links of well heater.
3. temperature controller according to claim 1, is characterized in that, indicator light circuit (8) comprises resistance R16, resistance R17, light emitting diode (DS8) and the second NPN type triode (Q3);
One end of resistance R16 connects the positive pole of direct supply VCC, the other end of resistance R16 is connected with the anode of light emitting diode (DS8), the negative electrode of light emitting diode (DS8) is connected with the collector of the second NPN type triode (Q3), the base stage of the second NPN type triode (Q3) is connected with one end of resistance R17, the other end of resistance R17 is connected with the pin one 2 of chip STC12C5410AD, and the emitter of the second NPN type triode (Q3) connects the power supply ground of direct supply VCC.
4. temperature controller according to claim 1, is characterized in that,
It also comprises control module, and described control module is embedded in single chip circuit (4), and described control module comprises as lower module:
For inputting the module of the indoor temperature of setting, the surface temperature of setting, the heating power of heater circuit and residing room number;
For receiving the module of the temperature signal that temperature collection circuit detects in real time;
Described temperature signal comprises indoor real time temperature signal, the resistance wire real time temperature signal of ground real time temperature signal and heater circuit;
For controlling the module of the temperature signal of the described real-time detection of display circuit display;
During for being greater than the indoor temperature of setting when the indoor real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the module that heater circuit stops heating;
During for being less than the indoor temperature of setting when the indoor real time temperature received, carry out the module heated according to the power control heater circuit of the heater circuit of input;
During for being greater than the surface temperature of setting when the ground real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the module that heater circuit stops heating;
During for being less than the surface temperature of setting when the ground real time temperature received, carry out the module heated according to the power control heater circuit of the heater circuit of input;
For recording the module of heater circuit heat time;
The module of host computer is sent to for room number, the heating power of heater circuit of input and the heater circuit heat time of record residing for input.
5. the temperature-controlled process of temperature controller according to claim 1, is characterized in that, described control method is by being embedded in software simulating at single chip circuit (4), and described control method comprises the steps:
For inputting the step of the indoor temperature of setting, the surface temperature of setting, the heating power of heater circuit and residing room number;
For receiving the step of the temperature signal that temperature collection circuit detects in real time;
Described temperature signal comprises indoor real time temperature signal, the resistance wire real time temperature signal of ground real time temperature signal and heater circuit;
For controlling the step of the temperature signal of the described real-time detection of display circuit display;
During for being greater than the indoor temperature of setting when the indoor real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the step that heater circuit stops heating;
During for being less than the indoor temperature of setting when the indoor real time temperature received, carry out the step heated according to the power control heater circuit of the heater circuit of input;
During for being greater than the surface temperature of setting when the ground real time temperature received, controlling the pilot lamp flicker of indicator light circuit and controlling the step that heater circuit stops heating;
During for being less than the surface temperature of setting when the ground real time temperature received, carry out the step heated according to the power control heater circuit of the heater circuit of input;
For recording the step of heater circuit heat time;
The step of host computer is sent to for room number, the heating power of heater circuit of input and the heater circuit heat time of record residing for input.
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CN201310626142.4A CN103631288B (en) | 2013-11-28 | 2013-11-28 | Temperature controller and temperature-controlled process thereof |
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CN105302184A (en) * | 2015-11-30 | 2016-02-03 | 成都聚汇才科技有限公司 | Dryer temperature-control system based on adjustable thermostatic control circuit |
CN105487578B (en) * | 2016-01-11 | 2018-02-16 | 天津住总机电设备安装有限公司 | A kind of indoor temperature change generated in case timer |
CN107329505A (en) * | 2016-04-29 | 2017-11-07 | 长沙闽壹湖电子科技有限责任公司 | A kind of industrial temperature control system |
CN108062128A (en) * | 2017-12-26 | 2018-05-22 | 黑龙江隆宇科技开发有限责任公司 | Power carrier temperature controller and its temprature control method |
CN114234274A (en) * | 2021-12-28 | 2022-03-25 | 苏州康碳地暖科技有限公司 | Heating foot pad with multiple functions |
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CN1570787A (en) * | 2004-01-17 | 2005-01-26 | 陈英泉 | Computer control system for electric heating group |
CN101477919A (en) * | 2009-01-23 | 2009-07-08 | 东南大学 | Intelligent control module for permanent magnet contactor |
CN201348743Y (en) * | 2008-11-27 | 2009-11-18 | 高仕龙 | Digital temperature control device |
CN201852191U (en) * | 2010-11-05 | 2011-06-01 | 重庆温馨时代暖通设备有限公司 | Partial-load variable-power output control system of electric floor heating system |
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CN1570787A (en) * | 2004-01-17 | 2005-01-26 | 陈英泉 | Computer control system for electric heating group |
CN201348743Y (en) * | 2008-11-27 | 2009-11-18 | 高仕龙 | Digital temperature control device |
CN101477919A (en) * | 2009-01-23 | 2009-07-08 | 东南大学 | Intelligent control module for permanent magnet contactor |
CN201852191U (en) * | 2010-11-05 | 2011-06-01 | 重庆温馨时代暖通设备有限公司 | Partial-load variable-power output control system of electric floor heating system |
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